Zhao Zhiwen, Qin Jie, Zhang Chen, Wang Yaorong, Yuan Dan, Yao Yingming
Key Laboratory of Organic Synthesis of Jiangsu Province, College of Chemistry, Chemical Engineering and Materials Science, Dushu Lake Campus, Soochow University , Suzhou 215123, P. R. China.
Inorg Chem. 2017 Apr 17;56(8):4569-4576. doi: 10.1021/acs.inorgchem.7b00107. Epub 2017 Mar 27.
Ionic rare-earth metal complexes 1-4 bearing an imidazolium cation were synthesized, which, as single-component catalysts, showed good activity in catalyzing cyclic carbonate synthesis from epoxides and CO. In the presence of 0.2 mol % catalyst, monosubstituted epoxides bearing different functional groups were converted into cyclic carbonates in 60-97% yields under atmospheric pressure. In addition, bulky/internal epoxides with low reactivity yielded cyclic carbonates in 40-95% yields. More importantly, the readily available samarium complex 2 was reused for six successive cycles without any significant loss in its catalytic activity. This is the first recyclable rare-earth metal-based catalyst in cyclic carbonate synthesis.
合成了带有咪唑阳离子的离子型稀土金属配合物1 - 4,它们作为单组分催化剂,在催化环氧化物和CO合成环状碳酸酯方面表现出良好的活性。在0.2 mol%催化剂存在下,带有不同官能团的单取代环氧化物在常压下以60 - 97%的产率转化为环状碳酸酯。此外,反应活性低的位阻/内环氧以40 - 95%的产率生成环状碳酸酯。更重要的是,易于获得的钐配合物2可连续重复使用六个循环,其催化活性没有任何显著损失。这是环状碳酸酯合成中第一种可循环使用的稀土金属基催化剂。